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The Role of Apoptotic Signaling in Axon Guidance

机译:凋亡信号在轴突引导中的作用

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摘要

Navigating growth cones are exposed to multiple signals simultaneously and have to integrate competing cues into a coherent navigational response. Integration of guidance cues is traditionally thought to occur at the level of cytoskeletal dynamics. Drosophila studies indicate that cells exhibit a low level of continuous caspase protease activation, and that axon guidance cues can activate or suppress caspase activity. We base a model for axon guidance on these observations. By analogy with other systems in which caspase signaling has non-apoptotic functions, we propose that caspase signaling can either reinforce repulsion or negate attraction in response to external guidance cues by cleaving cytoskeletal proteins. Over the course of an entire trajectory, incorrectly navigating axons may pass the threshold for apoptosis and be eliminated, whereas axons making correct decisions will survive. These observations would also explain why neurotrophic factors can act as axon guidance cues and why axon guidance systems such as Slit/Robo signaling may act as tumor suppressors in cancer.
机译:导航生长锥同时暴露于多个信号,并且必须将竞争提示整合到一致的导航响应中。传统上,指导线索的整合发生在细胞骨架动力学的水平。果蝇研究表明细胞表现出低水平的连续caspase蛋白酶激活,并且轴突指导提示可以激活或抑制caspase活性。我们基于这些观察结果为轴突指导模型。通过与其中胱天蛋白酶信号传导具有非凋亡功能的其他系统进行类推,我们提出胱天蛋白酶信号传导可以通过分裂细胞骨架蛋白来增强排斥力或消除对外部指导信号的吸引力。在整个轨迹过程中,不正确导航的轴突可能会超过凋亡的阈值并被消除,而做出正确决定的轴突将继续存在。这些观察结果还可以解释为什么神经营养因子可以充当轴突引导线索,以及为什么轴突引导系统(例如Slit / Robo信号转导)可以充当癌症的肿瘤抑制因子。

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